Inline Laser PCB Depaneling Machine
With the development of the electronics manufacturing industry, PCB designs are trending towards thinner and lighter forms. The shipment volume of PCBs with thickness below 0.8mm has been increasing year by year, placing higher demands on depaneling processes. Traditional depaneling methods can no longer fully meet the requirements of precision and reliability.
To achieve high-speed, low-stress flexible depaneling, Youngpool Technology proudly introduces the LD-4 Laser Depaneling Machine.
The machine comes with a standard 60W green laser, enabling high-speed and precise cutting, and supports both inline and offline operation modes, providing flexibility for diverse production scenarios. Additionally, the compact design, with a width of less than 0.8 meters, effectively saves valuable production line space.
● Supports inline/offline operation modes
● Standard 60W laser for high-speed depaneling
● Precise cutting with no mechanical stress
● Cutting accuracy <0.05mm
● Multi-layer safety protection to eliminate light pollution
● Intelligent dust removal system
● Graphical programming
● Three-stage guide rail
● Machine width: 0.77 meters
TECHNICAL SPECIFICATIONS
Model No.
LD-4
Laser Type
Standard:Green Laser, 60W, Nanosecond
Max. Product Size (mm)
270mm*300mm (Including Fixture)
Min. Product Size (mm)
50mm*50mm (Including Fixture)
Product Thickness (mm)
Max.1.2mm
Fixture Thickness (mm)
Max.18mm
Working Range (mm)
200mm*240mm
Cutting Accuracy (mm)
<0.05
Laser Lifespan
>20000 Hours
Cutting Method
Galvanometer Scanning
Control System Software
Integrated Vision, Laser, and Motion Control
Power Supply
220V/50Hz/4KVA
Air Pressure
5kgf/cm²
Operating Environment
15℃-35℃
Weight (kg)
800
Dimensions (mm)
770(W) x 1520.5(D) x 1700(H)
Optional: UV Laser, 30W, Nanosecond

One-click scanning with image programming
Programmable Z-axis with adjustable height
Supports both inline and offline operation modes
High-efficiency dust collection system

Dimensions


























IPv6 network supported